• 제목/요약/키워드: stomatal

검색결과 421건 처리시간 0.022초

Heteromeres arbutifolia 와 Ferocactus acanthodes의 기공개폐를 위한 공변세포의 능.수동적 행동 (Active and Passive Behaviours of the Guard Cells for Stomatal Opening and Closing in Heteromeres arbutifolia and Ferocactus acanthodes)

  • Nam-Kee Chang
    • The Korean Journal of Ecology
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    • 제4권3_4호
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    • pp.59-67
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    • 1981
  • 본 연구는 Heteromeres arbutifolia의 잎과 Ferocactus acanthodes의 줄기에서 기공저항을 측정하여 공변세포의 능동적 수동적 운동을 이론적 기반하에서 연구하는데 그 목적이 있다. 빛과 물의 손실에 대한 기공의 능동적 수동적 반응이 관찰되었고 공변세포의 내외의 물의 득실율을 명명 $\Delta$Wi 와 $\Delta$Wt라고 하였을 때 그곳에 축적되는 물의 축적율은 $\Delta$Wi-$\Delta$Wt로 표시된다. 빛의 존재하에서 기공이 열린 잎을 암처리시키고 어두운 곳에서 기공이 닫힌 잎에 빛을 주었을때, H. arbutifolia잎의 공변세포는 $\Delta$Wi>$\Delta$Wt인 상태만을 나타냈고 기공개폐는 능동적이였다. 그러니 자연광하에서 기공을 닫는 F. acanthodes의 줄기에 검은 천을 덮었다가 벗겼을때 공변세포의 운동은 $\Delta$Wi<$\Delta$Wt 상태에서 일어 났으며 수동적이였다. 줄기에서 떨어짐으로 인해 $\Delta$Wi>$\Delta$Wt 상태를 나타내는 H. arbutifolia와 F. acanthodes의 공변세포의 운동은 광의 유무에 무관하게 언제나 수동적으로 일어 났다. F. acanthodes와 Opuntia bigelovii의 줄기에 있는 공변세포의 증산저항계수는 각각 0.380과 0.135였으며 이들은 0.034의 값을 나타내는 H. arbutifolia잎의 경우보다 훨씬높다. 더우기 낮동안 F. acanthodes의 줄기에서 기공이 열리는 현상은 물을 줌으로써 유도될 수 있었다. 이 결과들로부터 사막의 CAM식물들은 언제나 기공을 여는 상태이나 밤동안은 $\Delta$Wi>$\Delta$Wt이고 낮동안은 $\Delta$Wi<$\Delta$Wt가 되므로 밤에 기공이 열리고 낮에는 닫히는 수동적 운동을 하게된다고 해석된다.

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건조 스트레스에 따른 황칠나무 유묘의 광합성과 수분특성인자 변화 (Changes in Photosynthetic Performance and Water Relation Parameters in the Seedlings of Korean Dendropanax Subjected to Drought Stress)

  • 이경철
    • 한국약용작물학회지
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    • 제26권2호
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    • pp.181-187
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    • 2018
  • Background: This study aimed to investigate out the influence of drought stress on the physiological responses of Dendropanax morbifera seedlings. Methods and Results: Drought stress was induced by discontinuing water supply for 30 days. Under drought stress, photosynthetic activity was significantly reduced with decreasing soil water content (SWC), as revealed by the parameters such as Fv/Fm, maximum photosynthetic rate ($P_{N\;max}$), stomatal conductance ($g_s$), stomatal transpiration rate (E), and intercellular $CO_2$ concentration (Ci). However, water use efficiency (WUE) was increased by 2.5 times because of the decrease in $g_s$ to reduce transpiration. Particularly, E and $g_s$ were remarkably decreased when water was withheld for 21 days at 6.2% of SWC. Dendropanax morbifera leaves showed osmotic adjustment of -0.30 MPa at full turgor and -0.13 MPa at zero turgor. In contrast, the maximum bulk modulus of elasticity ($E_{max}$) did not change significantly. Thus, Dendropanax morbifera seedlings could tolerate drought stress via osmotic adjustment. Conclusions: Drought avoidance mechanisms of D. morbifera involve reduction in water loss from plants, through the control of stomatal transpiration, and reduction in cellular osmotic potential. Notably photosynthetic activity was remarkably reduced, to approximately 6% of the SWC.

The Electrophysiology Application on Guard Cells to See the Influence of Carbon Dioxide

  • Lee, Joon-Sang
    • 한국환경과학회지
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    • 제23권5호
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    • pp.763-770
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    • 2014
  • The effect of $CO_2$ on the opening of stomata in the intact leaf of Commelina communis has been investigated. Full opening of stomatal apertures(around $18{\mu}m$) was achieved in the intact leaf by addition of $CO_2$($900{\mu}mol\;mol^{-1}$). At 90 minutes, the stomatal apertures of leaves treated with $CO_2$ free air were reduced. In contrast, stomata opened most widely with the treatment of $CO_2$ air at 90 minutes. The effects of light, $CO_2$ air and $CO_2$ free air on the change of membrane potential difference(PD) were measured. Fast hyperpolarization of guard cell membrane PD was recorded reaching up to -12 mV in response to light. If $CO_2$ free air was given firstly, there was no response. When light was given after $CO_2$ free air, the light effect was very clear. At the onset of $CO_2$ air, the PD showed a dramatic hyperpolarization to about -25 mV. Changes in the pH of apoplast in intact leaves in response to $CO_2$ air were observed. $CO_2$ air caused a change of 0.4 pH unit. Therefore, it can be hypothesized that $CO_2$ flowing could stimulate proton efflux which is a necessary precursor of stomatal opening.

Sorbitol-Facilitated Preconditioning Improves Desiccation Resistance of Douglas-fir and Western Hemlock Seedlings

  • Guak Sung-Hee
    • 생물환경조절학회지
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    • 제15권1호
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    • pp.100-106
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    • 2006
  • A hypertonic solution of sorbitol was used to precondition Douglas-fir and Western hemlock plug seedlings to improve desiccation resistance. Seedlings were preconditioned by soaking their root balls in water, -0.75 or -1.50 MPa sorbitol solution for 22 hr, and then exposed to desiccation conditions for 8 days. During the desiccation period, a transpirational water loss was significantly reduced by the sorbitol preconditioning, with its effect positively depending on concentration. This preconditioning-induced reduction in water loss was mainly caused by the decline in needle stomatal conductance. Sorbitol-induced stomatal control was more closely associated with reduction in plant water potential, rather than increase in abscisic acid concentrations. After rehydration of stressed-plants, most of the preconditioned seedlings with sorbitol were survived, while only 35% of Douglas-fir and 28% of Western hemlock seedlings treated with water were alive. The post-growth was significantly greater in the preconditioned seedlings than only water-treated seedlings. These results suggested that the earlier stomatal control with sorbitol-facilitated preconditioning could play a role in improving desiccation resistance of evergreen woody plants at transplanting in the field where water supply is limited or dry conditions are prevailing.

The Parallel Measurements of Stomatal Apertures and Apoplastic pH on Guard Cells from Epidermal Strips and Intact Leaves of Commelina communis

  • Lee, Joon-Sang
    • 환경생물
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    • 제20권1호
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    • pp.78-84
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    • 2002
  • The effects of light and darkness on stomatal aperture and guard cell apoplastic pH in the intact leaf and in the isolated epidermal strips of Commelina communis have been investigated. Stomata in the intact leaf opened wide in the light. In contrast, stomata in the isolated epidermal strips did not respond clearly to light. To eucidate the relationship between the stomatal aperture and the guard cell apoplastic pH, apoplastic pH was measured. In the light the guard cell wall of intact leaf was acidified by pH 1.9 units, falling from pH 7.3 to pH 5.4 in the first 10 minutes. On the contrary, apoplastic pH of isolated epidermal strips changed slowly from pH 7.3 to pH 6.9 at 20 min. Stomata in the intact leaf closed rapidly in the dark. On the other hand, stomata in the isolated epidermal strips failed to close in dark. There was a slow increase in apoplastic pH on transfer to the dark after incubation for 1.5 h in the light and the level observed before the experiment was regained after around 40 min. When the isolated epidermal strips were transferred to the dark, apoplastic pH maintained a uniform level of around pH 7.2-7.4. These results indicate that the mechanism of stomatal opening and closing from isolated epidermal strips and intact leaves could be different.

Post Infection Physiobiochemical Alteration at Various Intensities of Leaf spot (Myrothecium roridum) in Mulberry

  • Kumar, P.M.Pratheesh;Qadri, S.M.H.;Pal, S.C.;Mishra, A.K.;Urs, S.Raje
    • International Journal of Industrial Entomology and Biomaterials
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    • 제7권2호
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    • pp.175-180
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    • 2003
  • Changes in biochemical constituents and physiological alteration were studied in various intensities (1-5%, 6-15%, 16-30%, 31-50% and > 50%) of leaf spot (Myrothecium roridum) on mulberry leaves and compared with healthy leaves. Chlorophyll, total soluble sugar and total protein were decreased (P < 0.01), but total phenol increased due to pathogen infection. Changes in biochemical constituents showed significant correlation with intensity of disease. Chlorophyll ($r^2$= 0.92), and protein (($r^2$= 0.83) possessed negative while phenol (($r^2$= 0.61) possessed positive correlation. Photosynthetic rate, transpiration rate, stomatal conductance, moisture content (%) and physiological water use efficiency (pWUE) were decreased, but stomatal resistance increased in the infected leaves. Physiological parameters also possessed significant (P < 0.01) correlation with disease intensity. Photosynthetic rate (($r^2$= 0.96), transpiration rate ($r^2$=0.88), stomatal conductance (($r^2$= = 0.65), physiological water use efficiency (($r^2$= 0.88) and moisture content (r = 0.85) were negatively but stomatal resistance (($r^2$= 0.75) was positively correlated to disease intensities.

인삼의 기공수분포에 관하여 (Frequency and Distribution of Btomate in Korean Ginseng Plant (Pann ginseng C.A. Meyer))

  • 이종철;천성기;김요태
    • Journal of Ginseng Research
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    • 제4권1호
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    • pp.49-54
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    • 1980
  • This investigation were carrion out to know the frequency, size and distribution of stomata in Korean ginseng, acanthopanax and codonopsis. The results are as follows; 1. Stomatal frequency in ginseng leaf was remarkably less than those of acanthopanax and codonopsis leaf, but size of stomata in ginseng leaf was larger than those of acanthopanax and codonopsis leaf. 2. Stomatal frequency of one year old ginseng plant was higher than those of the older. Two to five years old ginseng plants were not differed in frequency and size of stomata. 3. Frequency and size of stomata were higher and larger in red-berry variant in compare to yellow-berry variant. 4. Stomatal frequency in different leaf Position was not significantly different among those of middle leaf, first side leaf and second side leaf, but in decreasing order of middle Part, upper, lower part and edge in the same ginseng leaf. 5. Stomata was not seen in adaxial surface and petiole of leaf ginseng, acanthopanax and codonopsis. 6. Stomatal frequency was higher in ginseng plant grown under no$.$shading compared to shading, and that of ginseng plant in rear line was less than that of front line under the same shade roof.

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Three Possible Mechanisms for Stomatal Opening in Response to Light

  • Lee, Joon-Sang
    • The Korean Journal of Ecology
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    • 제28권2호
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    • pp.105-112
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    • 2005
  • Environmental factors such as light and low $CO_2$ concentrations trigger events which may result in stomatal opening. Stomatal aperature is largely controlled by the solute contents of guard cells, but not exclusively, by through changes in their content of potassium salts, with $K^+$ balanced either by $Cl^-$ or malate, depending on the species and conditions. However, how these signals are sensed and how they are transduced into driving the ion fluxes that control stomatal movements is not still fully understood. The basic role of stomata is regulating transpiration and photosynthesis. Photosynthesis plays a central role in the physiology of plants and an understanding of its response to light is, therefore, critical to any discussion of how plants sense and respond to light. It had been proposed that the evidences pointed three possible mechanisms for the light response. Firstly, there is a direct response of stomata to light. Secondly. there is an indirect response of stomata to light through the effect of $CO_2$. Lastly, there are some evidences for a third effect of light on stomata. However, attempts to investigate how these three possible mechanisms explained in detail in response to light have not been made. Therefore, this study is examined the differences among these three possible mechanisms.

수종 참나무속 유식물의 건조스트레스에 대한 기공저항의 조절과 전략의 분화 (Stomatal Control and Strategy Segregation to Drought Stress in Young Trees of Several Oak Species)

  • 김종욱;김준호
    • The Korean Journal of Ecology
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    • 제17권3호
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    • pp.241-249
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    • 1994
  • 참나무속 식물 6종류의 잎의 확산저항, 기공밀도, 공변세포의 길이 및 털의 밀도를 측정하여 건조스트레스에 대한 이 식물들의 전략을 주성분분석법으로 분석하였다. 상수리나무, 갈참나무 및 졸참나무의 잎의 확산저항은 다른 3종보다 높은 Ψleaf 또는 낮은 WSD에서 빠르게 상승함으로써 수분 스트레스를 회피하였다. 그러나, 신갈나무와 떡갈나무는 낮은 Ψleaf, 낮은 기공밀도, 작은 기공 크기 및 높은 털밀도로 수분스트레스를 회피하였다. 그러나 신갈나무와 떡갈나무는 낮은 Ψleaf에서 기공 확산저항의 상승을 보였다. 건조스트레스에 대한 조정능과 관련된 15변수의 주성분분석에서 참나무속 식물은 2그룹, 즉 건성생육지종인 굴참나무, 신갈나무 및 떡갈나무와 중성생육지종인 상수리 나무, 갈참나무 및 졸참나무로 구별되었고, 건성생육지종인 굴참나무는 높은 털밀도, 낮은 기공밀도 및 높은 LAR에서 신갈나무 및 떡갈나무와 다시 구별되었다. 이 결과는 자연생육지에서 참나무속 식물의 건조에 대한 전략을 잘 설명하고 있다.

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생화학 및 생물리 모수들의 도출과 생권 모형(SiB2)에의 적용 (Derivation of Biochemical and Biophysical Parameters and Their Application to the Simple Biosphere Model (SiB2))

  • 채남이;김준
    • 한국농림기상학회지
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    • 제1권1호
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    • pp.52-59
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    • 1999
  • Vegetation canopy plays an important role in $CO_2$/$H_2$O exchange between the biosphere and the atmosphere by controlling leaf stomata. In this study, rice (Oryza sativa L.), a staple crop in Asia was investigated to formulate its single leaf model of photosynthesis and stomatal conductance. Photosynthesis and stomatal conductance were measured with a portable infrared gas analyzer system. Other plant and meteorological variables were also measured. To evaluate empirical constants in this biochemical leaf model, nonlinear least squares technique was used. The maximum catalytic activity of enzyme and the maximum rate of electron transport were $ 100\mu$$m^{-2}$ $s^{-1}$ and $140 \mu$㏖ m$^{-2}$ s$^{-1}$ (@ 35$^{\circ}C$), respectively. The empirical constants, m and b, associated with stomatal conductance model were 9.7 and $0.06 m^{-2}$ $s^{-1}$ , respectively. On a leaf scale, agreements between the modeled and the measured values of photosynthesis and stomatal conductance were on average within 20%, and the simulation of diurnal variation was also satisfactory On a canopy scale, the Simple Biosphere model(SiB2) was tested using the derived parameters. The modeled energy fluxes were compared against the micrometeorologically measured fluxes over a rice canopy. Agreements between the modeled and the measured values of net radiation, sensible heat and latent heat fluxes, and $CO_2$ flux (i.e., net canopy photosynthesis) were on average within 25%.

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